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使用原生质谱法对半胱氨酸偶联抗体药物偶联物进行完整定量分析。

Intact quantitation of cysteine-conjugated antibody-drug conjugates using native mass spectrometry.

作者信息

Li Yihan, Wang Yuting, Shenoy Vikram M, Niu Shuai, Jenkins Gary J, Sarvaiya Hetal

机构信息

Department of Quantitative, Translational & ADME Sciences, AbbVie, South San Francisco, California, USA.

Department of Quantitative, Translational & ADME Sciences, AbbVie, Worcester, Massachusetts, USA.

出版信息

Rapid Commun Mass Spectrom. 2024 Aug 15;38(15):e9774. doi: 10.1002/rcm.9774.

Abstract

RATIONALE

A common strategy for antibody-drug conjugate (ADC) quantitation from in vivo study samples involves measurement of total antibody, conjugated ADC, and free payload concentrations using multiple reaction monitoring (MRM) mass spectrometry. This not only provides a limited picture of biotransformation but can also involve lengthy method development. Quantitation of ADCs directly at the intact protein level in native conditions using high-resolution mass spectrometers presents the advantage of measuring exposure readout as well as monitoring the change in average drug-to-antibody ratio (DAR) and in vivo stability of new linker payloads with minimal method development. Furthermore, site-specific cysteine-conjugated ADCs often rely on non-covalent association to retain their quaternary structure, which highlights the unique capabilities of native mass spectrometry (nMS) for intact ADC quantitation.

METHODS

We developed an intact quantitation workflow involving three stages: automated affinity purification, nMS analysis, and data processing in batch fashion. The sample preparation method was modified to include only volatile ion-pairing reagents in the buffer systems. A capillary size-exclusion chromatography (SEC) column was coupled to a quadrupole time-of-flight high-resolution mass spectrometer for high-throughput nMS analysis. Samples from two mouse pharmacokinetic (PK) studies were analyzed using both intact quantitation workflow and the conventional MRM-based approach.

RESULTS

A linear dynamic range of 5-100 μg/mL was achieved using 20 μL of serum sample volume. The results of mouse in vivo PK measurement using the intact quantitation workflow and the MRM-based approach were compared, revealing excellent method agreement.

CONCLUSIONS

We demonstrated the feasibility of utilizing nMS for the quantitation of ADCs at the intact protein level in preclinical PK studies. Our results indicate that this intact quantitation workflow can serve as an alternative generic method for high-throughput analysis, enabling an in-depth understanding of ADC stability and safety in vivo.

摘要

原理

从体内研究样本中对抗体药物偶联物(ADC)进行定量的常用策略包括使用多反应监测(MRM)质谱法测量总抗体、偶联的ADC和游离有效载荷的浓度。这不仅提供了有限的生物转化情况,还可能涉及冗长的方法开发。使用高分辨率质谱仪在天然条件下直接对完整蛋白质水平的ADC进行定量,具有测量暴露读数的优势,同时能够以最少的方法开发来监测平均药物与抗体比率(DAR)的变化以及新连接子有效载荷的体内稳定性。此外,位点特异性半胱氨酸偶联的ADC通常依赖非共价结合来保持其四级结构,这突出了天然质谱(nMS)在完整ADC定量方面的独特能力。

方法

我们开发了一种完整的定量工作流程,包括三个阶段:自动亲和纯化、nMS分析和批量数据处理。对样品制备方法进行了修改,使缓冲系统中仅包含挥发性离子对试剂。将毛细管尺寸排阻色谱(SEC)柱与四极杆飞行时间高分辨率质谱仪联用,用于高通量nMS分析。使用完整定量工作流程和传统的基于MRM的方法对来自两项小鼠药代动力学(PK)研究的样本进行了分析。

结果

使用20 μL血清样本体积实现了5 - 100 μg/mL的线性动态范围。比较了使用完整定量工作流程和基于MRM的方法进行小鼠体内PK测量的结果,显示出极好的方法一致性。

结论

我们证明了在临床前PK研究中利用nMS对完整蛋白质水平的ADC进行定量的可行性。我们的结果表明,这种完整定量工作流程可作为高通量分析的替代通用方法,能够深入了解ADC在体内的稳定性和安全性。

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